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Universal scaling laws for charge-carrier interactions with quantum confinement in lead-halide perovskites
hal.structure.identifier | Laboratoire Photonique, Numérique et Nanosciences [LP2N] | |
dc.contributor.author | TAMARAT, Philippe | |
hal.structure.identifier | Laboratoire Photonique, Numérique et Nanosciences [LP2N] | |
dc.contributor.author | PRIN, Elise | |
dc.contributor.author | BEREZOVSKA, Yuliia | |
hal.structure.identifier | Department of Chemistry and Applied Biosciences [ETH Zürich] [D-CHAB] | |
dc.contributor.author | MOSKALENKO, Anastasiia | |
hal.structure.identifier | Institut des Sciences Chimiques de Rennes [ISCR] | |
dc.contributor.author | NGUYEN, Thi Phuc Tan | |
hal.structure.identifier | Laboratoire Photonique, Numérique et Nanosciences [LP2N] | |
dc.contributor.author | XIA, Chenghui | |
hal.structure.identifier | Laboratoire Photonique, Numérique et Nanosciences [LP2N] | |
dc.contributor.author | HOU, Lei | |
hal.structure.identifier | Laboratoire Photonique, Numérique et Nanosciences [LP2N] | |
dc.contributor.author | TREBBIA, Jean-Baptiste | |
hal.structure.identifier | Institut des Fonctions Optiques pour les Technologies de l'informatiON [FOTON] | |
dc.contributor.author | ZACHARIAS, Marios | |
hal.structure.identifier | Institut des Fonctions Optiques pour les Technologies de l'informatiON [FOTON] | |
dc.contributor.author | PEDESSEAU, Laurent | |
hal.structure.identifier | Institut des Sciences Chimiques de Rennes [ISCR] | |
dc.contributor.author | KATAN, Claudine | |
hal.structure.identifier | Swiss Federal Laboratories for Materials Science and Technology [Thun] [EMPA] | |
dc.contributor.author | BODNARCHUK, Maryna | |
hal.structure.identifier | Department of Chemistry and Applied Biosciences [ETH Zürich] [D-CHAB] | |
dc.contributor.author | KOVALENKO, Maksym | |
hal.structure.identifier | Institut des Fonctions Optiques pour les Technologies de l'informatiON [FOTON] | |
dc.contributor.author | EVEN, Jacky | |
hal.structure.identifier | Laboratoire Photonique, Numérique et Nanosciences [LP2N] | |
dc.contributor.author | LOUNIS, Brahim | |
dc.date.accessioned | 2023-05-12T10:29:26Z | |
dc.date.available | 2023-05-12T10:29:26Z | |
dc.date.issued | 2023-12 | |
dc.identifier.issn | 2041-1723 | |
dc.identifier.uri | https://oskar-bordeaux.fr/handle/20.500.12278/181368 | |
dc.description.abstractEn | Abstract Lead halide perovskites open great prospects for optoelectronics and a wealth of potential applications in quantum optical and spin-based technologies. Precise knowledge of the fundamental optical and spin properties of charge-carrier complexes at the origin of their luminescence is crucial in view of the development of these applications. On nearly bulk Cesium-Lead-Bromide single perovskite nanocrystals, which are the test bench materials for next-generation devices as well as theoretical modeling, we perform low temperature magneto-optical spectroscopy to reveal their entire band-edge exciton fine structure and charge-complex binding energies. We demonstrate that the ground exciton state is dark and lays several millielectronvolts below the lowest bright exciton sublevels, which settles the debate on the bright-dark exciton level ordering in these materials. More importantly, combining these results with spectroscopic measurements on various perovskite nanocrystal compounds, we show evidence for universal scaling laws relating the exciton fine structure splitting, the trion and biexciton binding energies to the band-edge exciton energy in lead-halide perovskite nanostructures, regardless of their chemical composition. These scaling laws solely based on quantum confinement effects and dimensionless energies offer a general predictive picture for the interaction energies within charge-carrier complexes photo-generated in these emerging semiconductor nanostructures. | |
dc.language.iso | en | |
dc.publisher | Nature Publishing Group | |
dc.title.en | Universal scaling laws for charge-carrier interactions with quantum confinement in lead-halide perovskites | |
dc.type | Article de revue | |
dc.identifier.doi | 10.1038/s41467-023-35842-4 | |
dc.subject.hal | Physique [physics] | |
dc.subject.hal | Chimie | |
dc.description.sponsorshipEurope | Polariton logic | |
bordeaux.journal | Nature Communications | |
bordeaux.page | 229 | |
bordeaux.volume | 14 | |
bordeaux.hal.laboratories | Laboratoire Photonique, Numérique et Nanosciences (LP2N) - UMR 5298 | * |
bordeaux.issue | 1 | |
bordeaux.institution | Université de Bordeaux | |
bordeaux.institution | CNRS | |
bordeaux.peerReviewed | oui | |
hal.identifier | hal-03940652 | |
hal.version | 1 | |
hal.origin.link | https://hal.archives-ouvertes.fr//hal-03940652v1 | |
bordeaux.COinS | ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Nature%20Communications&rft.date=2023-12&rft.volume=14&rft.issue=1&rft.spage=229&rft.epage=229&rft.eissn=2041-1723&rft.issn=2041-1723&rft.au=TAMARAT,%20Philippe&PRIN,%20Elise&BEREZOVSKA,%20Yuliia&MOSKALENKO,%20Anastasiia&NGUYEN,%20Thi%20Phuc%20Tan&rft.genre=article |
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